1) I want to water a square flower garden that is 12.2 m on a side with rotating sprayer. The sprayer is located in the center of the garden. a. Calculate the radius of the circle the sprinkler is required to reach in order to water the entire garden. b. Calculate the surface area of grass outside the garden that gets watered. The flow rate of the sprinkler is 3.8 gal/min. If the sprinkler is on for 30 minutes, calculate in liters the water delivered per square meter of garden, not counting the grassy area outside the garden. с.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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I) Twant to water a square flower garden that is 12.2 m on a side with rotating sprayer. The
sprayer is located in the center of the garden.
a. Calculate the radius of the circle the sprinkler is required to reach in order to water the
entire garden.
b. Calculate the surface area of grass outside the garden that gets watered.
The flow rate of the sprinkler is 3.8 gal/min. If the sprinkler is on for 30 minutes,
calculate in liters the water delivered per square meter of garden, not counting the grassy
area outside the garden.
с.
Transcribed Image Text:I) Twant to water a square flower garden that is 12.2 m on a side with rotating sprayer. The sprayer is located in the center of the garden. a. Calculate the radius of the circle the sprinkler is required to reach in order to water the entire garden. b. Calculate the surface area of grass outside the garden that gets watered. The flow rate of the sprinkler is 3.8 gal/min. If the sprinkler is on for 30 minutes, calculate in liters the water delivered per square meter of garden, not counting the grassy area outside the garden. с.
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